Do indoor chemicals promote development of airway allergy?
- 1 June 2007
- journal article
- review article
- Published by Hindawi Limited in Indoor Air
- Vol. 17 (3) , 236-255
- https://doi.org/10.1111/j.1600-0668.2006.00468.x
Abstract
Allergic asthma has increased worldwide in the industrialized countries. This review evaluates whether the major groups of indoor chemical exposures possess allergy-promoting (adjuvant) effects; formaldehyde was excluded, because of the size of the literature. Volatile organic compounds (VOCs) are used as an example of gases and vapors. The precipitation of asthmatic symptoms by VOC exposures is probably because of VOC levels considerably above typical indoor levels, or VOCs may be a surrogate for exposure to allergens, combustion products or dampness. Indoor particles possessed adjuvant effects in animal studies and allergy-promoting effects in humans. Quaternary ammonium compounds may possess adjuvant effects in animal studies and promoted sensitization in humans in occupational settings. The use of cleaning agents, anionic and non-ionic surfactants are not considered to possess an important adjuvant effect in the general population. Regarding phthalate exposures, results from animal and epidemiological studies were found to be discordant. There is little evidence that the indoor chemicals evaluated possess important adjuvant effects. If buildings are kept clean, dry and free of combustion products, the important question may be would it be profitable to look for lifestyle factors and non-chemical indoor exposures in order to abate airway allergy? Indoor chemicals (pollutants) have been accused to promote development of airway allergy by adjuvant effects. In this review, we evaluated the scientific literature and found little support for the supposition that indoor chemicals possess important adjuvant effects. This rises the question: would it be profitable for abatement of airway allergy to look for non-chemical indoor exposures, including lifestyle factors, and exposures to allergens, microorganisms, including vira, and their interactions?Keywords
This publication has 141 references indexed in Scilit:
- IgE-mediated sensitisation, rhinitis and asthma from occupational exposuresToxicology, 2005
- An integrative approach considering acute symptoms and intensity ratings of chemosensory sensations during experimental exposuresEnvironmental Toxicology and Pharmacology, 2005
- Adjuvant effect of quaternary ammonium compounds in a murine modelToxicology Letters, 2004
- ‘EUROPART’. Airborne particles in the indoor environment. A European interdisciplinary review of scientific evidence on associations between exposure to particles in buildings and health effectsIndoor Air, 2003
- Understanding the pathogenesis of allergic asthma using mouse modelsAnnals of Allergy, Asthma & Immunology, 2001
- Severe asthma and ARDS triggered by acute short-term exposure to commonly used cleaning detergentsEuropean Respiratory Journal, 2000
- Specific Antibody Responses to Subtilisin Carlsberg (Alcalase) in Mice: Development of an Intranasal Exposure ModelFundamental and Applied Toxicology, 1996
- Specific IgE and IgG1 Responses to Subtilisin Carlsberg (Alcalase) in Mice: Development of an Intratracheal Exposure ModelFundamental and Applied Toxicology, 1996
- DDA as an immunological adjuvantResearch in Immunology, 1992
- Synergistic effect of detergents and aluminium phosphate on the humoral immune response to bacterial and viral membrane proteinsVaccine, 1987